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Investigations and Improvement of Robustness of Reduced-Order Models of Reacting Flow

机译:反应流降阶模型的鲁棒性研究与改进

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摘要

The impact of chemical reactions on the robustness and accuracy of projection-based reduced-order models (ROMs) of fluid flows is investigated. Both Galerkin and least squares Petrov-Galerkin ROMs are shown to be less robust in reacting flows as compared with nonreacting flows. In particular, reacting flow ROMs show a strong sensitivity to resolution and are often unstable. To identify the main underlying causes, a representative problem that contains the essential physics encountered in typical combustion dynamics problems is chosen. Comparisons with nonreacting solutions are used to assess the impact of reactions. Investigations are focused on three potential areas of significance: 1) preservation of conservation laws; 2) loss of dissipation; and 3) existence of unphysical local phenomena. Results indicate that conservation is relatively well controlled and the global dissipation in the ROMs is actually larger than that in the underlying computational fluid dynamics solutions. Spurious local phenomena are, however, highly deleterious. Specifically, the steep temperature gradients that characterize combustion can lead to oscillations in local temperatures even in the absence of reactions. Representative calculations with physics-based temperature constraints verify that eliminating such excursions results in considerable improvement in both stability and future-state prediction capability.
机译:研究了化学反应对流体的基于投影的降阶模型(ROM)的鲁棒性和准确性的影响。与未反应的流相比,Galerkin ROM和最小二乘Petrov-Galerkin ROM都表现出较弱的反应流。特别是,反应流ROM对分辨率显示出很强的敏感性,并且经常不稳定。为了确定主要的根本原因,选择了一个典型的问题,其中包含典型的燃烧动力学问题中遇到的基本物理问题。与未反应溶液的比较用于评估反应的影响。调查集中在三个潜在的重要领域:1)保存保护法; 2)耗散损失; 3)存在不自然的局部现象。结果表明,守恒性相对较好,ROM中的全局耗散实际上大于基础计算流体动力学解决方案中的耗散。但是,虚假的局部现象是非常有害的。特别地,表征燃烧的陡峭温度梯度甚至在没有反应的情况下也会导致局部温度的振荡。具有代表性的基于物理的温度约束条件的计算证明,消除此类偏移会导致稳定性和未来状态预测能力的显着提高。

著录项

  • 来源
    《AIAA Journal》 |2019年第12期|5377-5389|共13页
  • 作者单位

    Univ Michigan Aerosp Engn Ann Arbor MI 48109 USA;

    Purdue Univ Sch Aeronaut & Astronaut W Lafayette IN 47907 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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